Search results for "Viscosity."

showing 10 items of 537 documents

Processing and characterization of blends of fluoroelastomers with semirigid liquid crystal polymers

1996

Fluoroelastomers (FEs) usually have working temperatures above 150°C and a great resistance to aggressive agents such as oils, fuels, aliphatic and aromatic solvents, steam, moderate acid, and basic environments. Liquid crystal polymers (LCPs) can be effective processing aids and reinforcing agents for elastomers. These characteristics are very attractive to lower melt viscosity and to stiffen and strengthen the final product through a simple blending. Among the LCPs, the semirigid LCPs seem the most appealing for blending with flexible thermoplastics (FTs) because their processing temperatures can be arranged to be in the same processing temperature range of FTs and because the presence of…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsVulcanizationGeneral ChemistryPolymerElastomerSurfaces Coatings and Filmslaw.inventionViscositychemistryLiquid crystallawUltimate tensile strengthCompatibility (mechanics)Materials ChemistryComposite materialElastic modulusJournal of Applied Polymer Science
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Testing of a constitutive equation for entangled networks by elongational and shear data of polymer melts

1973

An entangled network such as a polymer melt or a concentrated solution is here described by a set of two simultaneous equations. One of them is a balance of entanglements, the other gives the stress in the classical form of aMaxwell equation.

chemistry.chemical_classificationMaterials scienceShear viscosityConstitutive equationQuantum PhysicsMechanicsPolymerCondensed Matter PhysicsStress levelCondensed Matter::Soft Condensed MatterShear (geology)chemistrySimultaneous equationsPolymer chemistryGeneral Materials SciencePolymer meltRheologica Acta
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Solidification behavior of the theta system 2-propanol/poly(n-butyl methacrylate)

1995

Thermoreversible gelation of the system 2-propanol/poly (n-butyl methacrylate) — as detected by D'SC or dielectric experiments — does not manifest itself in a straightforward manner in the dynamic-mechanical properties. Its occurrence can, however, be seen in many ways: i) For constant composition of the system and a reference temperature lower than Tgel, the storage modulus G′ is larger than the loss modulus G″ in the glass transition zone of the master curve and both vary in an almost parallel manner with the angular frequency ω over almost two decades (whereas this feature is normally found for other gelling systems within the rubber plateau or the flow region). ii) The entanglement mole…

chemistry.chemical_classificationMaterials scienceTheta solventThermodynamicsPolymerDynamic mechanical analysisCondensed Matter PhysicsShear rateShear modulusViscositychemistryDynamic modulusGeneral Materials ScienceGlass transitionRheologica Acta
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On the Improvement of the Processability of UHMW-HDPE by Adding a Liquid Crystalline Polymer and a Fluoroelastomer

2001

Ultra-high molecular weight polyethylene possesses many interesting properties but a very bad processability. This material is not usually processed in conventional devices but only by compression moulding and RAM extrusion. Low molecular weight polyethylene can be used to improve the processability. In this work small amounts of a fluoroelastomer and of a liquid crystalline polymer have been used as processing aids to improve the extrudability of this polymer. In fact, the die pressure decreases whereas the output flow rate slightly increases with increasing concentration of the processing aids. Solution viscosity data shows that reduction of the mechanical stress during extrusion decrease…

chemistry.chemical_classificationMaterials sciencebusiness.product_categoryPolymers and PlasticsGeneral Chemical EngineeringOrganic ChemistryPolymerPolyethylenechemistry.chemical_compoundViscositychemistryPolymer chemistryMaterials ChemistryDie (manufacturing)FluoroelastomerExtrusionPolymer blendHigh-density polyethyleneComposite materialbusinessMacromolecular Materials and Engineering
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Melt Strength and Extensibility of High-Density Polyethylene

1984

The extensional flow of polymer melts has been extensively studied because of its importance in many technological processing operations and, from a more fundamental point of view, because the tensile properties of the polymer melts cannot be correlated directly with shear viscosity behavior.1–5

chemistry.chemical_classificationMaterials sciencechemistryShear viscosityUltimate tensile strengthFlow (psychology)Molar mass distributionPoint (geometry)High-density polyethylenePolymerComposite materialExtensibility
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No-flow temperature and solidification in injection molding simulation

2011

The no‐flow temperature (NFT) is a parameter representing the rheological solidification temperature of a polymer. A polymer, during injection molding filling stage, can stop its flow because of its high viscosity, although it is not yet fully solidified by means of glass transition or crystallization. The NFT is used in most of injection molding simulation packages: with this simple parameter it is possible to reduce the errors deriving from viscosity extrapolation at relatively low temperatures. The viscosity measurements for polymers are usually carried out at high temperatures, and the viscosity models can fail in prediction at temperatures close to the glass transition or crystallizati…

chemistry.chemical_classificationMaterials scienceinjection molding simulationMolding (process)Polymerlaw.inventionAmorphous solidPhysics::Fluid DynamicsCondensed Matter::Soft Condensed MatterViscosityTemperature dependence of liquid viscositychemistryRheologylawfilling stageCrystallizationComposite materialsolidificationGlass transition
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Consequences of linking charged and uncharged monomers to binary copolymers studied in dilute solution. Part I: Viscometric behavior of the homopolym…

2017

Abstract Intrinsic viscosities, generalized intrinsic viscosities and viscometric interaction parameters were measured for aqueous solutions of poly(ethylene oxide) [PEO], poly(N,N-dimethyl aminoethyl methacrylate) [PR] (uncharged) and for poly{[2-(methacryloyloxy)ethyl] trimethylammonium iodide} [PR+] (charged) within a wide range of molar masses. In this manner it was possible to establish the information required for the study of non-additivity effects upon the formation of binary copolymers from the monomers specified above. The following additional items were of particular interest: The effects of charging PR to PR+ and the composition dependence of the coil overlap in the case of sali…

chemistry.chemical_classificationMolar massAqueous solutionPolymers and PlasticsEthylene oxideIntrinsic viscosityOrganic ChemistryIodideGeneral Physics and AstronomySalt (chemistry)02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical scienceschemistry.chemical_compoundMonomerchemistryPolymer chemistryMaterials ChemistryCopolymer0210 nano-technologyEuropean Polymer Journal
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Viscosity-molecular weight relationship for cellulose solutions in either NMMO monohydrate or cuen

2010

The intrinsic viscosities, [η], of nine cellulose samples, with molar masses from 50 × 103 to 1 390 × 103 were determined in the solvents NMMO*H2O (N-methyl morpholin N-oxide hydrate) at 80°C and in cuen (copper II-ethlenediamine) at 25°C. The evaluation of these results with respect to the Kuhn–Mark–Houwink relations shows that the data for NMMO*H2O fall on the usual straight line in the double logarithmic plots only for M ≤ 158 103; the corresponding [η]/M relation reads log ([η]/mL g−1) = –1.465 + 0.735 log M. Beyond that molar mass [η] remains almost constant up to M ≈ 106 and increases again thereafter. In contrast to NMMO*H2O the cellulose solutions in cuen behave normal and the Kuhn–…

chemistry.chemical_classificationMolar massPolymers and PlasticsIntrinsic viscosityAnalytical chemistrychemistry.chemical_elementGeneral ChemistryPolymerCopperSurfaces Coatings and Filmschemistry.chemical_compoundViscositychemistryPolymer chemistryMaterials ChemistryCelluloseta216Hydrateta215Journal of Applied Polymer Science
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Molecular characterization of α , β -poly(asparthylhydrazide) a new synthetic polymer for biomedical applications

1999

Abstract α , β -Poly(asparthylhydrazide) (PAHy) is a new synthetic polymer that exhibits interesting properties and is a candidate for biomedical applications. In this article the characterization of PAHy polymer by multi-angle laser light scattering (MALS) and single-capillary viscometer (SCV) detectors on-line to a size exclusion chromatography (SEC) system is reported. The SEC–MALS–SCV system furnishes exhaustive and consistent characterization of the PAHy polymer. Further, it is possible to characterize the PAHy polymer through conventional SEC and universal calibration. The universal calibration method gives intrinsic viscosity and dispersity very close to those measured by the absolut…

chemistry.chemical_classificationMolar massPolymers and PlasticsIntrinsic viscosityOrganic ChemistryDispersitySize-exclusion chromatographyViscometerPolymerCharacterization (materials science)chemistryPolymer chemistryMaterials ChemistryRadius of gyrationPhysical chemistryPolymer
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Polymer-polymer interaction, in the presence of a solvent as measured by viscometry

2001

Dilute solution viscometry experiments have been carried out in five ternary polymer systems solvent(1)/polymer(2)/polymer(3). Values of the specific viscosity of polymer (3) in a ‘binary solvent’ formed by polymer(2) + solvent(1) have been used to determine the compatibility of the polymer blends. Krigbaum and Wall formalism has been used to predict compatibility which relies on an interaction parameter that depends on the concentration, weight fraction and molar mass of each polymer. To reduce the dependences and to clarify the criterion of compatibility, a parameter independent of polymer (3) composition and molar mass has been deduced. This parameter shows the same behaviour with polyme…

chemistry.chemical_classificationMolar massTernary numeral systemPolymers and PlasticsIntrinsic viscosityOrganic ChemistryThermodynamicsViscometerPolymerFlory–Huggins solution theorychemistryPolymer chemistryMaterials ChemistryMolar mass distributionPolymer blendPolymer International
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